TY - JOUR
T1 - Quantification of excitation-power dependency in Tm3 +/Yb3 + doped fluorotellurite upconverting glass phosphor for iris recognition
AU - Li, Bingrui
AU - Zhao, Xin
AU - Pun, Edwin Yue Bun
AU - Lin, Hai
N1 - Publisher Copyright:
© 2017 Elsevier B.V.
PY - 2018/2/15
Y1 - 2018/2/15
N2 - Excitation-power dependency of upconversion (UC) photons have been quantified in Tm3 +/Yb3 + doped fluorotellurite (BALMT) glasses under the excitation of 975 nm laser. The net powers of three-photon-excited blue and red and two-photon-excited NIR emissions are determined to be 242, 101 and 7994 μW in 0.5 wt% Tm2O3 and 2 wt% Yb2O3 co-doping case under the excitation power of 870 mW, respectively, and the net emission photon numbers are identified to be 58.2 × 1013, 33.0 × 1013 and 3253.2 × 1013cps. The quantum yields (QYs) for multi-photon-excited UC emissions of Tm3 + are identified as a positive dependency with pumping powers, and the relativity for three-photon fluorescence is extremely severe. When the excitation power density is set to 110.8 W/mm2, the QY values for 476 nm blue and 650 nm red UC emissions are up to 1.49 × 10− 4 and 0.84 × 10− 4, and furthermore, the value for 809 nm NIR UC emission is as high as 83.22 × 10− 4. The 809 nm luminescence is one of the good matching wavelengths for iris recognition in NIR ranges, the intensive NIR luminescence and the efficient blue fluorescence are promising in scanning and positioning for iris scanning. The macroscopic quantization for UC photon generation from Tm3 + in low-phonon fluorotellurite glasses provides a reliable reference for developing compact high-power-density light sources in iris recognition.
AB - Excitation-power dependency of upconversion (UC) photons have been quantified in Tm3 +/Yb3 + doped fluorotellurite (BALMT) glasses under the excitation of 975 nm laser. The net powers of three-photon-excited blue and red and two-photon-excited NIR emissions are determined to be 242, 101 and 7994 μW in 0.5 wt% Tm2O3 and 2 wt% Yb2O3 co-doping case under the excitation power of 870 mW, respectively, and the net emission photon numbers are identified to be 58.2 × 1013, 33.0 × 1013 and 3253.2 × 1013cps. The quantum yields (QYs) for multi-photon-excited UC emissions of Tm3 + are identified as a positive dependency with pumping powers, and the relativity for three-photon fluorescence is extremely severe. When the excitation power density is set to 110.8 W/mm2, the QY values for 476 nm blue and 650 nm red UC emissions are up to 1.49 × 10− 4 and 0.84 × 10− 4, and furthermore, the value for 809 nm NIR UC emission is as high as 83.22 × 10− 4. The 809 nm luminescence is one of the good matching wavelengths for iris recognition in NIR ranges, the intensive NIR luminescence and the efficient blue fluorescence are promising in scanning and positioning for iris scanning. The macroscopic quantization for UC photon generation from Tm3 + in low-phonon fluorotellurite glasses provides a reliable reference for developing compact high-power-density light sources in iris recognition.
KW - Excitation-power dependency
KW - Fluorotellurite glass
KW - Iris recognition
KW - Macroscopic quantization
KW - Multi-photon excitation
UR - https://www.scopus.com/pages/publications/85032932797
U2 - 10.1016/j.jnoncrysol.2017.10.037
DO - 10.1016/j.jnoncrysol.2017.10.037
M3 - 文章
AN - SCOPUS:85032932797
SN - 0022-3093
VL - 482
SP - 1
EP - 8
JO - Journal of Non-Crystalline Solids
JF - Journal of Non-Crystalline Solids
ER -